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Numerical Simulation of Plain Fin-and-Round Tube Heat Exchanger under Frost Condition

机译:冻融条件下普通翅片管换热器的数值模拟

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Three-dimensional numerical simulations are carried out to investigate the amount of heat transfer of a plain fin-and-four staggered layout and round tube rows for different fin pitch namely 25.4, 12.7, 6.35 and 4.23 mm. The simulations were conducted for two different frost thermal conductivity of 0.1 and 0.3 W/m-IK-1 using FLUENT 6.3 CFD code. The amount of heat transfer of the plain fin-and-round tube heat exchanger under frost condition (0, 1, 2, and 3 mm frost thickness) was investigated. Fluid flow, and heat transfer are simulated and results calculated using two turbulence models (k-epsilon, and Transitional SST k-omega), with steady-state solver. Model validation was carried out by comparing the pressure drop of simulated case to experimental results from the literature. Reasonable agreement was found between the present simulations compared to existing numerical study and experimental data.
机译:进行三维数值模拟,以研究不同翅片间距的普通翅片和四个交错布局和圆管排的传热量,即25.4,12.7,6.35和4.23mm。使用Fluent 6.3 CFD码进行0.1和0.3W / M-IK-1的两种不同霜导热率的模拟。研究了在霜条件下的普通翅片管热交换器(0,1,2和3mm霜厚度)的热传递量。模拟流体流动和热传递,并使用具有稳态求解器的两个湍流模型(K-epsilon和Transithal SST K-Omega)计算的结果。通过将模拟案例的压降与文献的实验结果进行比较来进行模型验证。与现有数值研究和实验数据相比,本仿真之间发现了合理的协议。

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